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Effect Of Oxygen Exposure On The Electrical Conductivity And Gas Sensitivity Of Nanostructured Zno Films

机译:氧暴露对纳米结构Zno薄膜电导率和气敏性的影响

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Nanostructured ZnO films (undoped and Ga, Co, Mn doped) were exposed to oxygen (1-80 vol.%) at temperature range of 300-500 ℃ in order to reveal the ambience-temperature effect on the electrical conductivity. The dominant effect of ambient influence via oxygen absorption was observed: the intensity of conductivity decrease was found to be proportional with temperature and tends to saturate with time. It is demonstrated that oxygen absorption occurs accordingly to diffusion law and the quantifying of oxygen diffusion was realized for different samples. It is revealed that the type of dopant affects the diffusion in ZnO and the tendency to increase the diffusion intensity with dopant content has been observed. After oxygen saturation the reversible effect of oxygen adsorption became dominant and contributed to the film's conductivity. Oxygen exposure undoped ZnO films revealed high sensitivity for oxygen content change in the ambience therefore they have been preceded further for gas sensor design and the detailed investigation of film's sensing properties has been carried out.
机译:在300-500℃的温度范围内,将纳米结构的ZnO薄膜(未掺杂和Ga,Co,Mn掺杂)暴露于氧气(1-80%(体积)),以揭示环境温度对电导率的影响。观察到了环境通过吸氧而产生的主要影响:发现电导率下降的强度与温度成正比,并且随着时间趋于饱和。结果表明,氧的吸收符合扩散规律,并且对不同样品进行了氧扩散的定量分析。揭示了掺杂剂的类型影响ZnO中的扩散,并且已经观察到随着掺杂剂含量增加扩散强度的趋势。氧饱和后,氧吸附的可逆作用占主导地位,并有助于薄膜的导电性。暴露于氧气的未掺杂ZnO薄膜对环境中的氧气含量变化表现出很高的敏感性,因此在气体传感器设计中已被进一步采用,并且已经对薄膜的传感特性进行了详细研究。

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